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大鼠胰腺质膜中鸟嘌呤核苷酸结合位点与腺苷酸环化酶激活的关联。胃肠激素的相互作用。

Association of binding sites for guanine nucleotides with adenylate cyclase activation in rat pancreatic plasma membranes. Interaction of gastrointestinal hormones.

作者信息

Svoboda M, Robberecht P, Camus J, Deschodt-Lanckman M, Christophe J

出版信息

Eur J Biochem. 1978 Feb 1;83(1):287-97. doi: 10.1111/j.1432-1033.1978.tb12093.x.

Abstract
  1. The activation of rat pancreatic adenylate cyclase by guanosine 5'-(beta-gamma-imido)triphosphate (p[NH]ppG) and GTP, and by the two gastrointestinal hormones pancreozymin (as C-terminal octapeptide) and secretin was correlated with the binding of [8-3H]guanosine 5'-(beta-gamma-imido)triphosphate to rat pancreatic plasma membranes. 2. The low basal adenylate cyclase activity was stimulated 17-fold by p[NH]ppG (after a 2 min lag period), 3,5-fold only by GTP, 21-fold by C-terminal octapeptide of pancreozymin, and 8-fold by secretin. GTP inhibited competitively the activation of adenylate cyclase by p[NH]ppG with a Ki,app almost identical with the Ka,app (0.3 micron). p[NH]ppG and GTP enhanced the stimulation by secretin more markedly than that by the C-terminal octapeptide of pancreozymin, leading to the same maximal activity. Both hormones suppressed the lag period of activation by p[NH]ppG. 3. The binding of [8-3H]p[NH]ppG was dependent on time, temperature and Mg2+ and it was also a saturable and reversible process. Scatchard plots with a concavity upward were linearized after co-addition of ATP, Mg2+ and an ATP-regenerating system that abolished low-affinity sites for p[NH]ppG without saturating higher affinity sites, GTP, ITP and UTP inhibited [8-3H]p[NH]ppG binding to the high-affinity sites in concentration ranges identical with those found for adenylate cyclase activation. Considerable binding of [8-3H]p[NH]ppG was still evident at 20 degrees C, but enzyme activation was not observed any more, except in the presence of hormones.
摘要
  1. 鸟苷5'-(β-γ-亚氨基)三磷酸(p[NH]ppG)、GTP以及两种胃肠激素促胰酶素(以C末端八肽形式)和促胰液素对大鼠胰腺腺苷酸环化酶的激活作用与[8-3H]鸟苷5'-(β-γ-亚氨基)三磷酸与大鼠胰腺质膜的结合相关。2. 低基础腺苷酸环化酶活性被p[NH]ppG(2分钟延迟期后)刺激17倍,仅被GTP刺激3.5倍,被促胰酶素C末端八肽刺激21倍,被促胰液素刺激8倍。GTP竞争性抑制p[NH]ppG对腺苷酸环化酶的激活,其表观抑制常数Ki与腺苷酸环化酶激活的表观解离常数Ka几乎相同(0.3微摩尔)。p[NH]ppG和GTP比促胰酶素C末端八肽更显著地增强促胰液素的刺激作用,导致相同的最大活性。两种激素均缩短了p[NH]ppG激活的延迟期。3. [8-3H]p[NH]ppG的结合依赖于时间、温度和Mg2+,并且也是一个可饱和且可逆的过程。在共同添加ATP、Mg2+和一个ATP再生系统后,向上凹的Scatchard图线性化,该系统消除了对p[NH]ppG的低亲和力位点而不使高亲和力位点饱和,GTP、ITP和UTP在与腺苷酸环化酶激活相同的浓度范围内抑制[8-3H]p[NH]ppG与高亲和力位点的结合。在20℃时仍有相当量的[8-3H]p[NH]ppG结合,但不再观察到酶激活,除非存在激素。

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